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432 lines
9.9 KiB
Ruby
432 lines
9.9 KiB
Ruby
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# delta.rb: Written by Tadayoshi Funaba 2004-2009
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require 'date'
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require 'date/delta/parser'
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class Date
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class Delta
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include Comparable
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UNIT_PREFIXES = {
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'yotta' => Rational(10**24),
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'zetta' => Rational(10**21),
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'exa' => Rational(10**18),
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'peta' => Rational(10**15),
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'tera' => Rational(10**12),
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'giga' => Rational(10**9),
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'mega' => Rational(10**6),
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'kilo' => Rational(10**3),
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'hecto' => Rational(10**2),
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'deca' => Rational(10**1),
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'deka' => Rational(10**1),
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'deci' => Rational(1, 10**1),
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'centi' => Rational(1, 10**2),
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'milli' => Rational(1, 10**3),
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'decimilli' => Rational(1, 10**4),
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'centimilli' => Rational(1, 10**5),
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'micro' => Rational(1, 10**6),
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'nano' => Rational(1, 10**9),
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'millimicro' => Rational(1, 10**9),
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'pico' => Rational(1, 10**12),
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'micromicro' => Rational(1, 10**12),
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'femto' => Rational(1, 10**15),
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'atto' => Rational(1, 10**18),
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'zepto' => Rational(1, 10**21),
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'yocto' => Rational(1, 10**24)
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}
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IUNITS = {
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'year' => Complex(0, 12),
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'month' => Complex(0, 1)
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}
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RUNITS = {
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'day' => Rational(1),
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'week' => Rational(7),
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'sennight' => Rational(7),
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'fortnight' => Rational(14),
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'hour' => Rational(1, 24),
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'minute' => Rational(1, 1440),
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'second' => Rational(1, 86400)
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}
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UNIT_PREFIXES.each do |k, v|
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RUNITS[k + 'second'] = v * RUNITS['second']
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end
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remove_const :UNIT_PREFIXES
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UNITS = {}
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IUNITS.each do |k, v|
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UNITS[k] = v
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end
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RUNITS.each do |k, v|
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UNITS[k] = v
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end
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UNITS4KEY = {}
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UNITS.each do |k, v|
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UNITS4KEY[k] = UNITS4KEY[k + 's'] = v
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end
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UNITS4KEY['y'] = UNITS4KEY['years']
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UNITS4KEY['yr'] = UNITS4KEY['years']
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UNITS4KEY['yrs'] = UNITS4KEY['years']
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UNITS4KEY['m'] = UNITS4KEY['months']
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UNITS4KEY['mo'] = UNITS4KEY['months']
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UNITS4KEY['mon'] = UNITS4KEY['months']
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UNITS4KEY['mnth'] = UNITS4KEY['months']
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UNITS4KEY['mnths'] = UNITS4KEY['months']
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UNITS4KEY['w'] = UNITS4KEY['weeks']
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UNITS4KEY['wk'] = UNITS4KEY['weeks']
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UNITS4KEY['d'] = UNITS4KEY['days']
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UNITS4KEY['dy'] = UNITS4KEY['days']
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UNITS4KEY['dys'] = UNITS4KEY['days']
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UNITS4KEY['h'] = UNITS4KEY['hours']
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UNITS4KEY['hr'] = UNITS4KEY['hours']
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UNITS4KEY['hrs'] = UNITS4KEY['hours']
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UNITS4KEY['min'] = UNITS4KEY['minutes']
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UNITS4KEY['mins'] = UNITS4KEY['minutes']
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UNITS4KEY['s'] = UNITS4KEY['seconds']
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UNITS4KEY['sec'] = UNITS4KEY['seconds']
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UNITS4KEY['secs'] = UNITS4KEY['seconds']
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UNITS4KEY['ms'] = UNITS4KEY['milliseconds']
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UNITS4KEY['msec'] = UNITS4KEY['milliseconds']
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UNITS4KEY['msecs'] = UNITS4KEY['milliseconds']
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UNITS4KEY['milli'] = UNITS4KEY['milliseconds']
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UNITS4KEY['us'] = UNITS4KEY['microseconds']
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UNITS4KEY['usec'] = UNITS4KEY['microseconds']
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UNITS4KEY['usecs'] = UNITS4KEY['microseconds']
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UNITS4KEY['micro'] = UNITS4KEY['microseconds']
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UNITS4KEY['ns'] = UNITS4KEY['nanoseconds']
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UNITS4KEY['nsec'] = UNITS4KEY['nanoseconds']
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UNITS4KEY['nsecs'] = UNITS4KEY['nanoseconds']
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UNITS4KEY['nano'] = UNITS4KEY['nanoseconds']
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def self.delta_to_dhms(delta)
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fr = delta.imag.abs
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y, fr = fr.divmod(12)
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m, fr = fr.divmod(1)
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if delta.imag < 0
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y = -y
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m = -m
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end
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fr = delta.real.abs
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ss, fr = fr.divmod(SECONDS_IN_DAY) # 4p
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d, ss = ss.divmod(86400)
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h, ss = ss.divmod(3600)
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min, s = ss.divmod(60)
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if delta.real < 0
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d = -d
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h = -h
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min = -min
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s = -s
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end
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return y, m, d, h, min, s, fr
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end
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def self.dhms_to_delta(y, m, d, h, min, s, fr)
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fr = 0 if fr == 0
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Complex(0, y.to_i * 12 + m.to_i) +
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Rational(d * 86400 + h * 3600 + min * 60 + (s + fr), 86400) # 4p
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end
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def initialize(delta)
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@delta = delta
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@__ca__ = {}
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end
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class << self; alias_method :new!, :new end
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def self.new(arg=0, h=0, min=0, s=0)
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if Hash === arg
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d = Complex(0)
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arg.each do |k, v|
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k = k.to_s.downcase
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unless UNITS4KEY[k]
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raise ArgumentError, "unknown keyword #{k}"
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end
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d += v * UNITS4KEY[k]
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end
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else
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d = dhms_to_delta(0, 0, arg, h, min, s, 0)
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end
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new!(d)
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end
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UNITS.each_key do |k|
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module_eval <<-"end;"
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def self.#{k}s(n=1)
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new(:d=>n * UNITS['#{k}'])
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end
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end;
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end
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class << self; alias_method :mins, :minutes end
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class << self; alias_method :secs, :seconds end
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def self.parse(str)
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d = begin (@@pa ||= Parser.new).parse(str)
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rescue Racc::ParseError
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raise ArgumentError, 'syntax error'
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end
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new!(d)
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end
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def self.diff(d1, d2) new(d1.ajd - d2.ajd) end
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class << self
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def once(*ids) # :nodoc: -- restricted
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for id in ids
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module_eval <<-"end;"
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alias_method :__#{id.object_id}__, :#{id.to_s}
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private :__#{id.object_id}__
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def #{id.to_s}(*args)
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@__ca__[#{id.object_id}] ||= __#{id.object_id}__(*args)
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end
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end;
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end
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end
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private :once
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end
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def dhms() self.class.delta_to_dhms(@delta) end
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once :dhms
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def delta() @delta end
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protected :delta
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def years() dhms[0] end
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def months() dhms[1] end
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def days() dhms[2] end
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def hours() dhms[3] end
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def minutes() dhms[4] end
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def seconds() dhms[5] end
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def second_fractions() dhms[6] end
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alias_method :mins, :minutes
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alias_method :secs, :seconds
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alias_method :sec_fractions, :second_fractions
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RUNITS.each_key do |k|
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module_eval <<-"end;"
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def in_#{k}s(u=1)
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if @delta.imag != 0
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raise ArgumentError, "#{k}: #{self} has month"
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end
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@delta.real / (u * RUNITS['#{k}'])
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end
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end;
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end
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alias_method :in_mins, :in_minutes
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alias_method :in_secs, :in_seconds
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def zero?() @delta.zero? end
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def nonzero?() unless zero? then self end end
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def integer? () @delta.imag == 0 && @delta.real.integer? end
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def -@ () self.class.new!(-@delta) end
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def +@ () self.class.new!(+@delta) end
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def dx_addsub(m, n)
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case n
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when Numeric; return self.class.new!(@delta.__send__(m, n))
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when Delta; return self.class.new!(@delta.__send__(m, n.delta))
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else
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l, r = n.coerce(self)
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return l.__send__(m, r)
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end
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end
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private :dx_addsub
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def + (n) dx_addsub(:+, n) end
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def - (n) dx_addsub(:-, n) end
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def dx_muldiv(m, n)
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case n
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when Numeric
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return self.class.new!(@delta.__send__(m, n))
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else
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l, r = n.coerce(self)
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return l.__send__(m, r)
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end
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end
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private :dx_muldiv
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def * (n) dx_muldiv(:*, n) end
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def / (n) dx_muldiv(:/, n) end
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def dx_conv1(m, n)
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if @delta.imag != 0
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raise ArgumentError, "#{m}: #{self} has month"
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end
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case n
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when Numeric
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return self.class.new!(Complex(@delta.real.__send__(m, n), 0))
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else
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l, r = n.coerce(self)
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return l.__send__(m, r)
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end
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end
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private :dx_conv1
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def % (n) dx_conv1(:%, n) end
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def div(n) dx_conv1(:div, n) end
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def modulo(n) dx_conv1(:modulo, n) end
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def divmod(n) [div(n), modulo(n)] end
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def quotient(n)
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if @delta.imag != 0
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raise ArgumentError, "quotient: #{self} has month"
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end
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case n
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when Numeric
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return self.class.new!(Complex((@delta.real / n).truncate))
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else
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l, r = n.coerce(self)
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return l.__send__(m, r)
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end
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end
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def remainder(n) dx_conv1(:remainder, n) end
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def quotrem(n) [quotient(n), remainder(n)] end
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def ** (n) dx_conv1(:**, n) end
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def quo(n) dx_muldiv(:quo, n) end
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def <=> (other)
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if @delta.imag != 0
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raise ArgumentError, "<=>: #{self} has month"
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end
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case other
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when Numeric; return @delta.real <=> other
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when Delta; return @delta.real <=> other.delta.real
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else
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begin
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l, r = other.coerce(self)
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return l <=> r
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rescue NoMethodError
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end
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end
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nil
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end
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def == (other)
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case other
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when Numeric; return @delta == other
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when Delta; return @delta == other
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else
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begin
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l, r = other.coerce(self)
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return l == r
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rescue NoMethodError
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end
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end
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nil
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end
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def coerce(other)
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case other
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when Numeric; return other, @delta
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else
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super
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end
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end
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def eql? (other) Delta === other && self == other end
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def hash() @delta.hash end
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def dx_conv0(m)
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if @delta.imag != 0
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raise ArgumentError, "#{m}: #{self} has month"
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end
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@delta.real.__send__(m)
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end
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private :dx_conv0
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def abs() dx_conv0(:abs) end
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def ceil() dx_conv0(:ceil) end
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def floor() dx_conv0(:floor) end
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def round() dx_conv0(:round) end
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def truncate() dx_conv0(:truncate) end
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def to_i() dx_conv0(:to_i) end
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def to_f() dx_conv0(:to_f) end
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def to_r() dx_conv0(:to_r) end
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def to_c() @delta end
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alias_method :to_int, :to_i
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def inspect() format('#<%s: %s (%s)>', self.class, to_s, @delta) end
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def to_s
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format(%(%s(%dd %.02d:%02d'%02d"%03d)%s(%dy %dm)), # '
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if @delta.real < 0 then '-' else '+' end,
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days.abs, hours.abs, mins.abs, secs.abs, sec_fractions.abs * 1000,
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if @delta.imag < 0 then '-' else '+' end,
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years.abs, months.abs)
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end
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def marshal_dump() @delta end
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def marshal_load(a)
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@delta = a
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@__ca__ = {}
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end
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end
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end
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vsave = $VERBOSE
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$VERBOSE = false
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class Date
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def + (n)
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case n
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when Numeric; return self.class.new!(@ajd + n, @of, @sg)
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when Delta
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d = n.__send__(:delta)
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return (self >> d.imag) + d.real
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end
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raise TypeError, 'expected numeric'
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end
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def - (x)
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case x
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when Numeric; return self.class.new!(@ajd - x, @of, @sg)
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when Date; return @ajd - x.ajd
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when Delta
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d = x.__send__(:delta)
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return (self << d.imag) - d.real
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end
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raise TypeError, 'expected numeric'
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end
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end
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$VERBOSE = vsave
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